#pragma once #include "codeobject.h" namespace pkpy{ static THREAD_LOCAL uint64_t kFrameGlobalId = 0; struct Frame { std::vector _data; int _ip = -1; int _next_ip = 0; const CodeObject* co; PyObject* _module; NameDict_ _locals; NameDict_ _closure; const uint64_t id; std::vector>> s_try_block; NameDict& f_locals() noexcept { return _locals != nullptr ? *_locals : _module->attr(); } NameDict& f_globals() noexcept { return _module->attr(); } PyObject** f_closure_try_get(StrName name) noexcept { if(_closure == nullptr) return nullptr; return _closure->try_get(name); } Frame(const CodeObject_& co, PyObject* _module, const NameDict_& _locals=nullptr, const NameDict_& _closure=nullptr) : co(co.get()), _module(_module), _locals(_locals), _closure(_closure), id(kFrameGlobalId++) { } const Bytecode& next_bytecode() { _ip = _next_ip++; return co->codes[_ip]; } Str snapshot(){ int line = co->codes[_ip].line; return co->src->snapshot(line); } // Str stack_info(){ // StrStream ss; // ss << "["; // for(int i=0; i<_data.size(); i++){ // ss << OBJ_TP_NAME(_data[i]); // if(i != _data.size()-1) ss << ", "; // } // ss << "]"; // return ss.str(); // } bool has_next_bytecode() const { return _next_ip < co->codes.size(); } PyObject* pop(){ #if PK_EXTRA_CHECK if(_data.empty()) throw std::runtime_error("_data.empty() is true"); #endif PyObject* v = _data.back(); _data.pop_back(); return v; } void _pop(){ #if PK_EXTRA_CHECK if(_data.empty()) throw std::runtime_error("_data.empty() is true"); #endif _data.pop_back(); } void try_deref(VM*, PyObject*&); PyObject* pop_value(VM* vm){ PyObject* value = pop(); try_deref(vm, value); return value; } PyObject* top_value(VM* vm){ PyObject* value = top(); try_deref(vm, value); return value; } PyObject*& top(){ #if PK_EXTRA_CHECK if(_data.empty()) throw std::runtime_error("_data.empty() is true"); #endif return _data.back(); } PyObject*& top_1(){ #if PK_EXTRA_CHECK if(_data.size() < 2) throw std::runtime_error("_data.size() < 2"); #endif return _data[_data.size()-2]; } template void push(T&& obj){ _data.push_back(std::forward(obj)); } void jump_abs(int i){ _next_ip = i; } void jump_rel(int i){ _next_ip += i; } void on_try_block_enter(){ s_try_block.emplace_back(co->codes[_ip].block, _data); } void on_try_block_exit(){ s_try_block.pop_back(); } bool jump_to_exception_handler(){ if(s_try_block.empty()) return false; PyObject* obj = pop(); auto& p = s_try_block.back(); _data = std::move(p.second); _data.push_back(obj); _next_ip = co->blocks[p.first].end; on_try_block_exit(); return true; } int _exit_block(int i){ if(co->blocks[i].type == FOR_LOOP) _pop(); else if(co->blocks[i].type == TRY_EXCEPT) on_try_block_exit(); return co->blocks[i].parent; } void jump_abs_safe(int target){ const Bytecode& prev = co->codes[_ip]; int i = prev.block; _next_ip = target; if(_next_ip >= co->codes.size()){ while(i>=0) i = _exit_block(i); }else{ const Bytecode& next = co->codes[target]; while(i>=0 && i!=next.block) i = _exit_block(i); if(i!=next.block) throw std::runtime_error("invalid jump"); } } Args pop_n_values_reversed(VM* vm, int n){ Args v(n); for(int i=n-1; i>=0; i--){ v[i] = pop(); try_deref(vm, v[i]); } return v; } Args pop_n_reversed(int n){ Args v(n); for(int i=n-1; i>=0; i--) v[i] = pop(); return v; } }; }; // namespace pkpy